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Does acute passive stretching increase muscle length in children with cerebral palsy?
Nicola Theis1, Thomas Korff, Harvey Kairon
1Centre for Sports Medicine and Human Performance, Brunel University, Kingston Lane, Uxbridge, Middlesex UB8 3PH, UK.
Insights
Stretching exercises can increase muscle and tendon length in children with spastic cerebral palsy, improving ankle range of motion. These improvements were observed regardless of whether the stretch was applied by a therapist or the child.
Area of Science:
- Pediatric rehabilitation
- Biomedical engineering
- Clinical orthopedics
Background:
- Children with spastic cerebral palsy often have stiff muscles and limited joint range of motion.
- Stretching is a common intervention to improve range of motion, but its effect on muscle and tendon length is unclear.
Purpose of the Study:
- To investigate if acute stretching increases muscle length in children with cerebral palsy.
- To determine if stretch technique influences changes in muscle and tendon length.
Main Methods:
- Eight children (6-14 years) with cerebral palsy underwent passive dorsiflexion stretching.
- Muscle and tendon lengths were measured before and after stretching using ultrasound.
- Stretches were applied by a physiotherapist or the children themselves.
Main Results:
- Stretching significantly increased ankle dorsiflexion, muscle length, and tendon length.
- Muscle fascicle length also increased significantly post-stretch.
- The observed changes were independent of the stretch technique used.
Conclusions:
- Commonly used stretching techniques effectively increase muscle and fascicle lengths immediately after stretching in children with cerebral palsy.
- These findings support the use of stretching to improve muscle extensibility in this population.
Background:
Children with spastic cerebral palsy experience increased muscle stiffness and reduced muscle length, which may prevent elongation of the muscle during stretch. Stretching performed either by the clinician, or children themselves is used as a treatment modality to increase/maintain joint range of motion. It is not clear whether the associated increases in muscle-tendon unit length are due to increases in muscle or tendon length. The purpose was to determine whether alterations in ankle range of motion in response to acute stretching were accompanied by increases in muscle length, and whether any effects would be dependent upon stretch technique.
Methods:
Eight children (6-14 y) with cerebral palsy received a passive dorsiflexion stretch for 5 × 20 s to each leg, which was applied by a physiotherapist or the children themselves. Maximum dorsiflexion angle, medial gastrocnemius muscle and fascicle lengths, and Achilles tendon length were calculated at a reference angle of 10 ° plantarflexion, and at maximum dorsiflexion in the pre- and post-stretch trials.
Findings:
All variables were significantly greater during pre- and post-stretch trials compared to the resting angle, and were independent of stretch technique. There was an approximate 10 ° increase in maximum dorsiflexion post-stretch, and this was accounted for by elongation of both muscle (0.8 cm) and tendon (1.0 cm). Muscle fascicle length increased significantly (0.6 cm) from pre- to post-stretch.
Interpretation:
The results provide evidence that commonly used stretching techniques can increase overall muscle, and fascicle lengths immediately post-stretch in children with cerebral palsy.
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